Movatterモバイル変換


[0]ホーム

URL:


US3809143A - Automatic control for venetian blind - Google Patents

Automatic control for venetian blind
Download PDF

Info

Publication number
US3809143A
US3809143AUS00267566AUS26756672AUS3809143AUS 3809143 AUS3809143 AUS 3809143AUS 00267566 AUS00267566 AUS 00267566AUS 26756672 AUS26756672 AUS 26756672AUS 3809143 AUS3809143 AUS 3809143A
Authority
US
United States
Prior art keywords
pair
cords
reels
motor
blind
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US00267566A
Inventor
A Ipekgil
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by IndividualfiledCriticalIndividual
Priority to US00267566ApriorityCriticalpatent/US3809143A/en
Application grantedgrantedCritical
Publication of US3809143ApublicationCriticalpatent/US3809143A/en
Anticipated expirationlegal-statusCritical
Expired - Lifetimelegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

Apparatus for automatically controlling a venetian blind is provided within a cornice box from which the blind is suspended. The apparatus includes a first and second drive motor for driving shafts provided with reels. Thus, in order to raise the blind a pair of cords, one on each side of the blind, is taken up by reels on a drive shaft being rotated by a first motor; and in order to lower the blind the pair of cords are played out from the reels by reversing the rotation of the first motor. The slats for the blind are supported by transverse cord members connected across a front and back cord provided on each side of the blind. Thus, in order to close the blind the front cord on each side of the blind is taken up by reels on a drive shaft being rotated by the second motor and the back cord on each side of the blind is simultaneously played out of reels on a drive shaft being rotated by the second motor; and in order to open the blind the direction of movements of the front and back cords is reversed by reversing the rotation of the second motor. Push buttons on a conveniently positioned panel provide for controlling the operation of the blind by selectively actuating the first and second motors.

Description

[22] Filed:
United States Patent 1191 Ipekgil AUTOMATIC CONTROL FOR 'VENETIAN BLIND [76] Inventor: Ayhan Ipekgil, 301 8. Kenmore Ave., Los Angeles, Calif. 90020 June 29, 1972 [211 App]. No.: 267,566
52 us. c1. ..160/168 [51] Int. 01. E06b 9/30 [58] Field of Search ..160/166-178 [5 61 References Cited UNITED STATES PATENTS 2,017,541 10/1935 Kuyper 160/168 2,723,716 11/1955 Berni 160/168 3,310,099
4/1967 Hunter et al.; 160/171 Primary Examiner-Peter M. Caun [57] ABSTRACT Apparatus for automatically controlling a venetian [451 May 7, 1974 blind is provided within a cornice box from Which the blind is suspended. The apparatus includes a first and, second drive motor for driving shafts provided with reels. Thus, in order to raise the blind a pair of cords, one on each side of the blind, is taken up by reels on a drive shaft beingrotated by a first motor; and in order to lower the blind the pair of cords are played out from the reels by reversing the rotation of the first motor. The slats for the blind are supported by transverse cord members connected ac'ross a front and back cord provided on each side of the blind. Thus, in order to close the blind the front oord on each side of the blind is taken up by reels on a drive shaft being rotated by the second motor and the back cord on each side of the blind is simultaneously played out of reels on a drive shaft being rotated. by the second motor; and in order to open the blind the direction of movements of the front and back cords is reversed by reversing the rotation of the second motor. Push-buttons on a conveniently positioned panel providefor controlling the operation of the blind by selectively actuating the first and second motors.
5 Claims, 8 Drawing Figures PATENTEUHAY 7 IBM SHEET 1 OF 2 r 1 AUTOMATIC CONTROL FOR VENETIAN BLIND This invention relates to controls for window blinds conventionally provided with cords hanging from the side of the window which can be manipulated for raising and lowering the blind and for tilting its slats to any desired angle so as to regulate the light, heat or air admitted therethrough.
The principal object of thepresent invention is to provide a control means which operates in response to the depressing and holding down of push buttons. on a control panel to automatically control the raising or blind by varying the angle at which the slats are held.
In accordance with the present invention a cornice bow is provided for mounting on the top ofa window. A blind comprised of a plurality of horizontally disposed slats is suspended from the bottom of the-comice box by cords located on either side of the blind. Mounted within the cornice box is a first motor which drives a first shaft provided with a first pair of reels. Also mounted within the cornice box is a slower speed second motor which simultaneously drives both a second shaft provided with a second pair of reels and a third shaft provided with a third pair of reels. A first pair of cords having upper ends wound about the respective first pair of reels extends down through openings on the respective sides of the slats with their lower ends attached to a bottom member of the blind. A second pair of cords having their upper ends wound in one sense about the respective second pair of reels extend down along the front of the respective sides of the slats and about pulleys provided on the sides of the bottom member and then pass upwardly to form a third pair of cords which extend up alongthe back of the respective sides of the slats with their upper ends wound in the opposite sense about the respective third pair of reels. 'A panel located on the side of thewindow is provided with an fup, push button, a down push button, an open push button and a close push button. When the up push button is depressed, a circuit is closed which energizes the first motor in one direction to gather up the first pair of cords on the respective first pair of reels to raise the blind and when the down push button is depressed a circuit is closed which energizes the first motor in the opposite direction to play out the first pair of cords wound on the respective first pair of reels to lower the blind. When the close push button is depressed the circuit is closed which energizes the second motor in one direction to play out the second pair of cords wound on the respective secoud'pair of reels and to gather in the third pair of cords wound on the respective third pair of reels so as to cause the slats'to be tilted to. a substantially vertical position and thereby close the blind. When the open push button is depressed a circuit is closed which energizes the second motor in the opposite direction to gather in the second pair of cords wound on the respective second lowering of the blind and the opening or closing of the 2 pair of reels and to play out the third pair of cords wound on the respective third pair of reels so as to cause the slats to be returned to their level or open position. Q
With these and other objects in view, the invention consists of the various parts of thedevice whereby the objects contemplated are obtained, as herein set forth,
pointed out in theappended claims and illustrated in the accompanying drawings.
IN THE DRAWINGS.
FIG. 1 is a perspective view of a blind comprised of a plurality of horizontally disposed slats beingsuspended from a cornice box which encloses the automatic controls of the present invention;
.FIG. 2 is a side view of the lower portion of the blind taken along line 2-2 of FIG. l'and showing the slats disposed in a level or open position;
FIG. 3 is a detail view of a pulley enclosed in one end portion of the bottom frame member of the blind;
FIG. 4 is a view showing a transverse cord connected by its ends to the front and back tilt cords;
FIG. 5 is a side view of thelower portion of the blind slowing the slats disposed in a tilted orclosed position;
FIG. 6 is aside view of the upper portion of the blind showing the slats drawn together as a result of the blind FIG. 8 is an electrical diagram showin the circuit for operating the motors in response to push buttons to control the operation of the blind. g
Referring to FIG. 1, acornice box 10 is shown mounted above the top of a window having a frame .11. A blind l2 comprised of a plurality of horizontally diss posedslats 13 and a horizontally disposed bottom member orrail 14 is suspended from below thecornice box 10 by threecords 16a, 17a, and 18a on the left side thereof and three cords 16b, 17b, and 18b on the right side thereof. The cords are made of a strong material such as nylon which can withstand considerable wear.
' The center cord 16a on the left side of blind 11 extends down from the base of thecornice box 10 through enlarged'openings 20a on the left end portions of each of theslats 13 and the lower end thereof is looped and fastened by ametal clip 21 to an eye hook 22aprovided on the left side of the upper surface of thebottom member 14. The front cord. 17a on the left side of the blind 11 extends down from the base of thecornice box 10 along the front of the slats l3 and the lower end thereof passes down through an opening 23a in the top of thebottom member 14 around a pulley 25a supported within thebottom member 14 on the left side thereof and then passesup through opening'24a to form the back cord which extends up along the back of theslats 13 into the base of thecornice box 10.
The center cord 16b on the right side of the blind 11 extends down from the base of'thecornice box 10 through enlarged openings 20b on the right end portion on each of theslats 13 and the lower endthereof is looped about and fastened by ametal clip 21 to an eye hook 22b provided on the right side of the upper surface of thebottom member 14. Thefront cord 17b on the right side of the blind 12 extends down from the base of the cornice box along the front of the slats l3 and the lower end passes down through an opening 23b in the top of thebottom member 14 around a pule ley b (FIG. 3) supported within thebottom'member 14 on the right side thereof and then passes up through an opening 24b on the top ofmember 14 to form the back cord 18b extending up along the back of theslats 13 into the base of thecornice box 10.
Connected across front cord 17a andback cord 18a on the left side of theblink 12 at each of a plurality of equally vertically spaced points along the length thereof is a transverse cord member 27a. As shown in F IG. 4, the ends of each of the cord members 27a are looped about points on therespective cords 17a and 18a and secured in position by use ofmetal clips 21. In a similar manner, connected-across front c'ord 17b and back cord l8b on the right side of the blind 12 at each of a plurality of equally vertically spaced points along the length thereof is a transverse cord member 27b. The respective ends of each of the cord members are looped about the respective cords 17b and 18b and se- 7 cured in position by the use ofmetal clips 21. It should now be clearly understood that the end portions of each of theslats 13 are supported on correspondingly leveled transverse cord members 27a and 27b.
Reference will next be made to FIG. 7 which shows a perspective view of thecornice box 10 with itstop 35 andfront wall 36 partially cut away to show apparatus included therein for automatically controlling the operation of the blind 12 in response to the depressing and holding down of push buttons provided on apanel 30 located at some convenient location such as the wall on the side of the window frame 11. Thecornice box 10 includes a set of threepulleys 31a, 32a and 33a mounted therein on the left side of itsbase 34 and a set of three pulleys 31b, 32b and 33b mounted therein on the right side of thebase 34.
Secured on thebase 34 on the central portion of thecornice box 10 is achassis 37. Afirst motor 41 is attached to thechassis 37 by abracket 38 provided with screws 39 and asecond motor 46 is attached to thechassis 37 by abracket 50 provided withscrews 51. Afirst shaft 42 extending from the right side of thefirst motor 41 has its outer end supported in abearing pedestal 43 having a base attached byscrews 45 to thechassis 37. Secured onthefirst shaft 42 is a first pair ofreels 44a and 44b. Asecond shaft 47 extending from the left side of thesecond motor 46 has its outer end supported in thebearing pedestal 43. Secured on thesecond shaft 47 is a second pair .of reels 48a and 48b. Athirdshaft 49 extending from the right side of thesecond motor 46 has its outer end supported in a bearing pedestal '54 having a base attached by screws 54a to thechassis 37. Secured on thethird shaft 49 is a third pair ofreels 52a and 52b. In order to reduce the weight of the apparatus enclosed in thecornice box 10 themotors 41 and 46 are small in size and the parts such as thechassis 37, theshafts 42, 47 and 49 and the bearing pedestals 45 and 54 are made of aluminum and the reels are made of a plastic material such as teflon and may be secured to the aluminum shafts by an epoxy cement.
Extending upwardly through three openings 53a on the left side of thebase 34 of thecornice box 10 are therespective cords 16a, 17a and 18a. The center cord 16a passes around the pulley 32a onbase 34 from which it 4 extends inwardly belowthechassis 37 to apulley 55a onbase 34 and then upwardly so that its end can be wound about thereel 44a on thefrist shaft 42. The
' front cord 17d passes around thepulley 31a onbase 34 Likewise, extendingupwardly through three open- V ings 53b on the right side of thebase 34 of thecornice box 10 are the respective ends of the cords 16b, 17b and 18b on the right side of the blind 12. The center cord 16b passes around pulley 32b onbase 34 and extendsinwardly below thechassis 37 to a pulley55b onbase 34 from which it is directed upwardly so that its end can be wound about the reel 44b on thefirst shaft 42. The front cord 17b passes around pulley 31b onbase 34 and extends inwardly below thechassis 37 to a pulley 57b onbase 34 from which it is directed upwardly so that its end canbe wound about the reel 48b on thesecond shaft 47. The back cord 18b passes around pulley 33b onbase 34 and extends inwardly below thechassis 37 to apulley 59b onbase 34 from which it is directed upwardly so that its end can be wound about thereel 52b on thethird shaft 49. 7
It should be noted that thefirst motor 41 andthesecond motor 46 are of the type that can operate to rotate in either a clockwise or counterclockwise direction. Furthermore, thesecond motor 46 operates at a much lower revolution per minute, i.e., 0n the orderof l/24 the revolution per minute of thefirst motor 41.
It should now be clearly understood that the cords 16a and 16b on the respective sides of the blind 12 have their upper ends wound about therespective reels 44a and 44b securedon thefirst shaft 42 so that these cords are taken up when theshaft 42 is rotated in a clockwise direction as viewed in FIG. 7. Furthermore, the cords 17a and 17b on the respective sides of the front of the blind 12 have their upper ends connected about the respective reels 48a and 48b secured on thesecond shaft 47 so that these cords are then taken up when theshaft 47 is rotated in a clockwise direction; and thecords 18a and 18b on the respective sides of the back of the blind 12 have their upper ends connected about therespective reels 52a and 52b secured on thethird shaft 49 so that these cords are played out when theshaft 49 is rotated in a clockwise direction.
Anelectrical cable 65 connected through the back of the cornice box 10'has leads connected to each of themotors 41 and 46. Thefirst motor 41 has a first input lead 61 which, when energized, provides forrotatingits shaft 42 clockwise and asecond input lead 62 which when energized provides for rotating itsshaft 42 counterclockwise. Likewise,second motor 46 has afirst input lead 63 which, when energized, provides for rotating itsshafts 47 and 49 clockwise and asecond input lead 64 which, when energized, provides for'rotating itsshafts 47 and 49 counterclockwise.
An electrical circuit for controlling themotors 41 and 46 to thereby control the operation of the blind l2 is shown in FIG. 8. The circuit includes four switches. These switches are designated as an ?upswitch 66, a
these four switches are provided onpanel 30 located on the side of the window frame 11. Each of the push buttons is provided with a spring (not shown) which re quires that the push button be held down in order to closethe associated switch contacts.
Thus the up push putton 71, when depressed, closes theup switch 66 and provides for raising the blind 12. The downpush button 72, when depressed, closes the down switch 67 and provides for lowering the blind 12. Theclose push button 73, when depressed, closes theclose switch 68 and provides for tilting each of theslats 13 to any desired angle so as to I partly or completely close the blind; and theopen push button 74, when depressed, closes theopen switch 69 and provides for leveling each of theslats 13 to a horizontal position, that is, a position parallel to the floor so as to provide formaximum opening of the blind 12 to light, air or heat.
As shown in FIG. 8, an AC power source (not shown) is coupled by atransformer 56 across thelines 58 and 60 which are illustrated as extending vertically on the left and right sides of the diagram. Afuse 56a is provided in theline 58. Connected across the vertical lines 6 held in an inclined position by their supporting transverse members 27a and 27b, theclose'push button 73 is depressed. Asa result of depressing and holding 58 and 60 are the parallel current paths of the control circuit. Thecurrent paths 75 and 76 are connected to line 58 by the up switch 67, respectively. Theswitches 66 and 67 are of the type that are mechanically interconnected in that .when the up push button 71, for example, isdepressed a'switch contact 70 in the current path 76 is open to assure that the current path 76 is open even though thepush button 72 may be simultaneously depressed. Theswitches 68 and 69 are similarly mechanically interconnected. Thus, as shown, when theup switch 66 is closed the current path75 leading to input lead 6] is closed which results in energizing thefirst motor 41 to rotate in a clockwise direction. It should now be clear that as long as the up button 71 is depressed themotor 41 rotatesshaft 42 in a closewise direction and the pair ofreels 44a and 44b take up the cords 16a and 16b and the blind 12 continues to be raised. When the raising of thebottom member 14 causes theuppermost slat 13 of the blind 12 to reach a level near the base of thecornice box 14, an
arm 77 of an over travel limit switch 78 (FIG. 6) is acv tuated to disconnect the power across thecurrent path 75 and stop thefirst motor 41 from being operated even through the up push button 71 is still depressed.
pair ofreels 44a and 44b play out the cords 16a and 16b and the blind l2 continues to be lowered.
Next to be described is the electrical circuit provided for opening and closing the blind 12, that is, leveling or tilting theslats 13 to vary the amount of light, air or heat passing therethrough. FIG. 1 shows the blind 12in 6 its lowered position with the horizontal slats in their level or open position. If it is desired to close the blind 12, that is, to tilt the respective slats 13so that they are down theclose push button 73, theclose switch 68 located incurrent path 79 connected to input lead 63 ofmotor 46 is closed and thesecond motor 46 is energized to slowly rotate in a clockwise direction. As a result, the pair of cords 17a and 17b are taken up on the reels 48a and 48b and the pair ofcords 18a and 18b are played out from thereels 52a and 52b which result in the front of theslats 13 being slowlytilted upwardly and the back being tilted at the same rate downwardly, as shown in FIG. 5, so as to close the blind 12. When theslats 13 have been tilted to provide the desired closing of the blind l2, releasing theclose push button 73 stops the clockwise rotation of thesecond motor 46 and the blind l2 stays in the desired closed position.
pushbutton 74 down thesecond motor 46 continues to be energized to slowly rotate in the counter clockwise direction causing theshaft 47 and therefore the reels 48a and 48b secured thereon to rotate and slowly play out the pair of cords 17a and 17b connected to the front of the slats l3 and causing theshaft 49 and therefore thereels 52a and 52b secured thereon to rotate and slowly take up the pair ofcords 18a and 18b connected to the back of theslats 13. When he slats 13 have reached a level position at which the blind 12 is opened the desired amount, releasing the open"push button 74 stops themotor 46 and the slats stay at that position. V
It should be noted that by having the integrally joined lower portion ofcords 17a and 18a looped around the pulley 25a mounted on one end of thebottom member 14 and by having the integrally joined lower portion of cords 17b and 18b looped around the pulley 25b mounted on the other end of the bottom member 14- playing out of the;back cords 18a and 18b, or vice versa.
It should be further noted that the vertical spacing of the transverse cord members 27a and 27b on the re-.
spective sides of the blind 12 may be closer together so I that a lesser amount of the intervening vertical length of thecord 17a, 18a and 17b, 1812 will be gathered up when the blind 12 is raised, as illustrated in FIG. 6.
While the preferred embodiments of the invention have been shown and described it should be understood that the present invention should not be limited thereto but that the invention is intended to embrace all embodiments coming within the scope of the claims which follow.
l. A Venetian blind provided with an automatic control, the combination comprising:
a casing, a first reversible motor mounted in said casing, said first motor having a drive shaft, a pair of first reels on the drive shaft of said first motor, a pair of first pulley means, a pair of first cords, each of said cords being wound on a reel of said pair of first reels and guided by said pair of first pulley means to respectively extend down from the opposite end portions of said casing,
a second reversible motor mounted in said casing, said second reversible motor having a drive shaft,
a pair of second reels and a pair of third reels on the drive shaft of said second motor,
a pair of second'pulley means and a pair of third pulley means,
a pair of second cords, each of said cords being wound on a reel of said pair of second reels and guided by said pair of second pulley means to respectively extend down from the opposite end portions and said casing,
a pair of third cords, each of said cords being wound on a reel of said pair of third reels in a sense opposite to the direction in which the pair of second cords is wound on the pair of second reels and guided by said pair of third pulley means to respectively extend down from the opposite end portions of said casing,
plurality of vertically spaced transverse cord members connected across one of the cords of the pair of second cords and one of the cords of the pair of third cords extending down on either of the end portions of the casing,
a plurality of horizontally disposed vertically spaced slats, each slat having its outer end supported below either of the end portions of said casing by a transverse cord member,
a bottom rail,
each of the cords of the pair of first cords, respectively extending down through aligned openings in either of the end portions of said slats and having its lower end connected to said bottom rail, and
an electrical circuit for separately energizing and controlling the direction of rotation of said first and second motors,
whereby when said first motor is energized, said pair of first cords is wound on or played out from said .pair of first reels to cause said bottom rail and said plurality of slats to be raised or lowered, and
whereby when said second motor is energized, said pair of second cords is wound or played out from said pair of second reels while said pair of third cords is simultaneously played out or wound on said pair of third reels to cause said slats to be either tilted to a closed position or disposed in a substantially horizontal open position. v
2,. The apparatus in accordance with claim 1;
wherein said electrical circuit includes a control panel provided with an up push button, a down push button, a close push button, and an open push button,
whereby while said up push button is being depressed, said first motor is rotated in one direction to wind said first pair of cords about said first pair of reels to raise the blind and while said down push button is being depressed said first motor is rotated in the opposite direction to unwind said first pair of cords from said first pair of reels to lower the blind, and
whereby while said close push button is being depressed said second motor is rotated in one direction to wind said second pair of cords about said 10 ing;
second pair of reels and to play out said third pair of cords from said third pair of reels to close the blind, and while said open push button is being depressed said second motor is rotated on the opposite direction to play out said second pair of cords from said second pair of reels and to wind said third pair of cords about said third pair of reels to open the blind.
3. The invention in accordance with claim 1 includa pulley mounted on either end of said bottom rail,
and
wherein thelower end of one of the cords of the second pair of cords and the lower end of the other of the cords of the third pair of cords extending down from each end of the casing are integrally joined and passed around a respective one of thepulleys on either end of thebottom rail 4. The invention in accordance with claim 1 wherein the revolutions per minute of the second motor is on the order of l/24th the revolutions per minute of the first motor. I
5. A Venetian blind provided with an automatic control, the combination comprising:
a casing,
a plurality of pairs of tilt cords extending down from said casing, each of said pairs of tilt cords including a back and front tilt cord,
a plurality of vertically spaced transverse members connecting the front and back tilt cords of each pair,
a plurality of horizontally disposed, vertically spaced slats supported between said back and front tilt cords by said transverse members,
at least two lift cords, each extending down from said casing through aligned openings provided in the slats between pairs of back and-front tilt cords,
a bottom rail attached to the lower ends of said lift cord,
a first reversible motor mounted in said casing, said first motor having a drive shaft,
a first pair of reels on the drive shaft of said first motor,
a first pair of pulley means insaid casing for guiding the lift cords to enable the upper ends thereof to be respectively wound about said first pair of reels,
a second reversible motor mounted in said casing,
said second motor having a drive shaft,
A first and second set of reels on said drive shaft 0 said second motor,
a first set of pulley means in said casing for guiding the front tilt cords to enable the upper ends thereof to be respectively wound about the reels of said first set of reels,
a second set of pulley means in said casing for guiding the back tilt cords to enable the upper ends thereof to be respectively wound about the reels of said second set of reels in a sense opposite to the direction in which the front tilt cords is wound on the reels of said first set of reels, and
control means for individually controlling the energization and the direction of rotation of said first and second motors.

Claims (5)

1. A Venetian blind provided with an automatic control, the combination comprising: a casing, a first reversible motor mounted in said casing, said first motor having a drive shaft, a pair of first reels on the drive shaft of said first motor, a pair of first pulley means, a pair of first cords, each of said cords being wound on a reel of said pair of first reels and guided by said pair of first pulley means to respectively extend down from the opposite end portions of said casing, a second reversible motor mounted in said casing, said second reversible motor having a drive shaft, a pair of second reels and a pair of third reels on the drive shaft of said second motor, a pair of second pulley means and a pair of third pulley means, a pair of second cords, each of said cords being wound on a reel of said pair of second reels and guided by said pair of second pulley means to respectively extend down from the opposite end portions and said casing, a pair of third cords, each of said cords being wound on a reel of said pair of third reels in a sense opposite to the direction in which the pair of second cords is wound on the pair of second reels and guided by said pair of third pulley means to respectively extend down from the opposite end portions of said casing, a plurality of vertically spaced transverse cord members connected across one of the cords of the pair of second cords and one of the cords of the pair of third cords extending down on either of the end portions of the casing, a plurality of horizontally disposed vertically spaced slats, each slat having its outer end supported below either of the end portions of said casing by a transverse cord member, a bottom rail, each of the cords of the pair of first cords, respectively extending down through aligned openings in either of the end portions of said slats and having its lower end connected to said bottom rail, and an electrical circuit for separately energizing and controlling the direction of rotation of said first and second motors, whereby when said first motor is energized, said pair of first cords is wound on or played out from said pair of first reels to cause said bottom rail and said plurality of slats to be raised or lowered, and whereby when said second motor is energized, said pair of second cords is wound or played out from said pair of second reels while said pair of third cords is simultaneously played out or wound on said pair of third reels to cause said slats to be either tilted to a closed position or disposed in a substantially horizontal open position.
2. The apparatus in accordance with claim 1; wherein said electrical circuit includes a control panel provided with an ''''up'''' push button, a ''''down'''' push button, a ''''close'''' push button, and an ''''open'''' push button, whereby while said ''''up'''' push button is being depressed, said first motor is rotated in one direction to wind said first pair of cords about said first pair of reels to raise the blind and while said ''''down'''' push button is being depressed said first motor is rotated in the opposite direction to unwind said first pair of cords from said first pair of reels to lower the blind, and whereby while said ''''close'''' push button is being depressed said second motor is rotated in one direction to wind said second pair of cords about said second pair of reels and to play out said third pair of cords from said third pair of reels to close the blind, and while said ''''open'''' push button is being depressed said second motor is rotated on the opposite direction to play out said second pair of cords from said second pair of reels and to wind said third pair of cords about said third pair of reels to open the blind.
5. A Venetian blind provided with an automatic control, the combination comprising: a casing, a plurality of pairs of tilt cords extending down from said casing, each of said pairs of tilt cords including a back and front tilt cord, a plurality of vertically spaced transverse members connecting the front and back tilt cords of each pair, a plurality of horizontally disposed, vertically spaced slats supported between said back and front tilt cords by said transverse members, at least two lift cords, each extending down from said casing through aligned openings provided in the slats between pairs of back and front tilt cords, a bottom rail aTtached to the lower ends of said lift cord, a first reversible motor mounted in said casing, said first motor having a drive shaft, a first pair of reels on the drive shaft of said first motor, a first pair of pulley means in said casing for guiding the lift cords to enable the upper ends thereof to be respectively wound about said first pair of reels, a second reversible motor mounted in said casing, said second motor having a drive shaft, A first and second set of reels on said drive shaft of said second motor, a first set of pulley means in said casing for guiding the front tilt cords to enable the upper ends thereof to be respectively wound about the reels of said first set of reels, a second set of pulley means in said casing for guiding the back tilt cords to enable the upper ends thereof to be respectively wound about the reels of said second set of reels in a sense opposite to the direction in which the front tilt cords is wound on the reels of said first set of reels, and control means for individually controlling the energization and the direction of rotation of said first and second motors.
US00267566A1972-06-291972-06-29Automatic control for venetian blindExpired - LifetimeUS3809143A (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US00267566AUS3809143A (en)1972-06-291972-06-29Automatic control for venetian blind

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US00267566AUS3809143A (en)1972-06-291972-06-29Automatic control for venetian blind

Publications (1)

Publication NumberPublication Date
US3809143Atrue US3809143A (en)1974-05-07

Family

ID=23019319

Family Applications (1)

Application NumberTitlePriority DateFiling Date
US00267566AExpired - LifetimeUS3809143A (en)1972-06-291972-06-29Automatic control for venetian blind

Country Status (1)

CountryLink
US (1)US3809143A (en)

Cited By (42)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4503900A (en)*1982-08-161985-03-12Rca CorporationVenetian blind construction
US4643238A (en)*1983-09-121987-02-17Tachikawa CorporationVenetian blind
US4706726A (en)*1985-01-101987-11-17V. Kann Rasmussen Industri A/SElectric control of venetian blind
US4735251A (en)*1985-02-261988-04-05Kuron CorporationOverhead blind
US4856574A (en)*1986-12-291989-08-15Sharp Kabushiki KaishaElectric blind apparatus
US5413161A (en)*1993-09-091995-05-09Corazzini; WarrenSolar powered window shade
US5495153A (en)*1993-06-111996-02-27Harmonic Design, Inc.Head rail-mounted mini-blind actuator for vertical blinds and pleated shades
US5517094A (en)*1993-07-201996-05-14Harmonic Design, Inc.Head rail-mounted mini-blind actuator
DE29515570U1 (en)*1995-09-291997-02-06Hüppe Form Sonnenschutz- und Raumtrennsysteme GmbH, 26133 Oldenburg Gatherable slatted blind
US5603371A (en)*1995-06-051997-02-18Gregg; Richard D.Electronic power angling rod for a window blind
US5698958A (en)*1993-06-111997-12-16Harmonic Design, Inc.Head rail-mounted actuator for window coverings
US5725040A (en)*1996-06-201998-03-10Harmonic Design, Inc.Suspension cord winding device for window covering
US5760558A (en)*1995-07-241998-06-02Popat; Pradeep P.Solar-powered, wireless, retrofittable, automatic controller for venetian blinds and similar window converings
US5793174A (en)*1996-09-061998-08-11Hunter Douglas Inc.Electrically powered window covering assembly
US5860463A (en)*1995-01-181999-01-19V. Kann Rasmussen Industri A/SEnd stop device for an electrically operated window screening arrangement
DE19755922A1 (en)*1997-12-171999-06-24Geiger Gerhard Gmbh & CoElectrically-powered drive unit for blinds
US6060852A (en)*1993-06-112000-05-09Harmonic Design, Inc.Head rail-mounted actuator for window covering
US6144177A (en)*1996-08-272000-11-07Mao; Kai MingDrapery actuator
EP0886030A3 (en)*1997-06-202001-02-14Hüppe Form Sonnenschutzsysteme GmbHVenetian blind
WO2002068786A1 (en)*2001-02-282002-09-06Vkr Holding A/SScreening device and drive means for the screening device and method of manual operating the screening device and a mounting for the screening device
US6655441B2 (en)*2002-03-072003-12-02Industrial Technology Research InstituteFriction transmission mechanism for a motor-driven blind
US6659156B2 (en)*2002-03-072003-12-09Industrial Technology Research InstituteScrew transmission mechanism for a blind
US20040163774A1 (en)*2002-03-072004-08-26Ming NienVenetian blind having dual-drive mechanism
US6789597B2 (en)*2002-03-072004-09-14Industrial Technology Research InstituteElectromagnetic clutch-controlled electric blind
US20050067117A1 (en)*2003-09-262005-03-31Kim Dong IkEmbedded type motorized blind device
US20080035280A1 (en)*2006-08-092008-02-14Ke-Min LinAdjusting structure of a curtain for adjusting the angle of curtain blade
US20080262637A1 (en)*2007-04-202008-10-23David M. DorroughControl for a motorized blind
US20090199975A1 (en)*2008-02-082009-08-13Wei-Cheng YehElectric roman shade
US20100018654A1 (en)*2008-07-222010-01-28Gary SkinnerProgrammable motor for window coverings
US20100154999A1 (en)*2008-12-222010-06-24Samsung Electronics Co., Ltd.Blind with solar batteries and control method thereof
US20100175838A1 (en)*2009-01-142010-07-15Hunter Douglas Inc.Noise dampening motor drive system for retractable covering for architectural openings
US8723466B2 (en)2010-09-172014-05-13Lutron Electronics Co., Inc.Motorized venetian blind system
WO2015005983A1 (en)*2013-07-092015-01-15Qmotion IncorporatedBattery powered venetian and roman shade system and methods of use
US20160010388A1 (en)*2013-03-052016-01-14Somfy SasActuator for driving a blind with adjustable slats and blind comprising such an actuator
US20160017656A1 (en)*2013-03-152016-01-21Springs Window Fashions, LlcWindow covering motorized lift and control operating system
US20160060955A1 (en)*2014-08-272016-03-03Yin-An HsiehRetractable light-diffusing module and light-diffusing structure thereof
US9347261B2 (en)2013-08-022016-05-24Lutron Electronics Co., Inc.Adjustment mechanisms for shades
US9611689B2 (en)2013-08-022017-04-04Lutron Electronics Co., Inc.Motorized sheer shading system
US9834986B2 (en)2012-02-272017-12-05Hunter Douglas Industries B.V.Architectural covering having a drive mechanism
US20180163463A1 (en)*2016-06-092018-06-14Whole Space Industries LtdWindow covering positional adjustment apparatus
US10676988B2 (en)2017-09-202020-06-09Whole Space Industries Ltd.Window covering control apparatus
US11193327B2 (en)*2018-12-142021-12-07Zhengzhou Mingyang Curtain Accessory Materials Co., Ltd.Spring winder and curtains using the spring winder

Citations (3)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2017541A (en)*1934-03-121935-10-15Rolscreen CoVenetian blind construction
US2723716A (en)*1953-02-141955-11-15Berni OresteDouble sliding louvre board venetian blind, designed to decrease the penetration of light when closed
US3310099A (en)*1965-07-191967-03-21HunterElectric venetian blind

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2017541A (en)*1934-03-121935-10-15Rolscreen CoVenetian blind construction
US2723716A (en)*1953-02-141955-11-15Berni OresteDouble sliding louvre board venetian blind, designed to decrease the penetration of light when closed
US3310099A (en)*1965-07-191967-03-21HunterElectric venetian blind

Cited By (64)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4503900A (en)*1982-08-161985-03-12Rca CorporationVenetian blind construction
US4643238A (en)*1983-09-121987-02-17Tachikawa CorporationVenetian blind
US4706726A (en)*1985-01-101987-11-17V. Kann Rasmussen Industri A/SElectric control of venetian blind
US4735251A (en)*1985-02-261988-04-05Kuron CorporationOverhead blind
US4856574A (en)*1986-12-291989-08-15Sharp Kabushiki KaishaElectric blind apparatus
US5714855A (en)*1993-06-111998-02-03Harmonic Design, Inc.Head rail-mounted actuator for window coverings
US6060852A (en)*1993-06-112000-05-09Harmonic Design, Inc.Head rail-mounted actuator for window covering
US5495153A (en)*1993-06-111996-02-27Harmonic Design, Inc.Head rail-mounted mini-blind actuator for vertical blinds and pleated shades
US5698958A (en)*1993-06-111997-12-16Harmonic Design, Inc.Head rail-mounted actuator for window coverings
US5907227A (en)*1993-06-111999-05-25Harmonic Design, Inc.Head rail-mounted actuator for window coverings
US5517094A (en)*1993-07-201996-05-14Harmonic Design, Inc.Head rail-mounted mini-blind actuator
US5413161A (en)*1993-09-091995-05-09Corazzini; WarrenSolar powered window shade
WO1996016466A1 (en)*1994-11-181996-05-30Harmonic Design, Inc.Head rail-mounted mini-blind actuator for vertical blinds and pleated shades
US5860463A (en)*1995-01-181999-01-19V. Kann Rasmussen Industri A/SEnd stop device for an electrically operated window screening arrangement
US5603371A (en)*1995-06-051997-02-18Gregg; Richard D.Electronic power angling rod for a window blind
US5760558A (en)*1995-07-241998-06-02Popat; Pradeep P.Solar-powered, wireless, retrofittable, automatic controller for venetian blinds and similar window converings
DE29515570U1 (en)*1995-09-291997-02-06Hüppe Form Sonnenschutz- und Raumtrennsysteme GmbH, 26133 Oldenburg Gatherable slatted blind
US5883480A (en)*1995-11-151999-03-16Harmonic Desing, Inc.Window covering with head rail-mounted actuator
US5725040A (en)*1996-06-201998-03-10Harmonic Design, Inc.Suspension cord winding device for window covering
US6144177A (en)*1996-08-272000-11-07Mao; Kai MingDrapery actuator
US5793174A (en)*1996-09-061998-08-11Hunter Douglas Inc.Electrically powered window covering assembly
EP0886030A3 (en)*1997-06-202001-02-14Hüppe Form Sonnenschutzsysteme GmbHVenetian blind
DE19755922A1 (en)*1997-12-171999-06-24Geiger Gerhard Gmbh & CoElectrically-powered drive unit for blinds
WO2002068786A1 (en)*2001-02-282002-09-06Vkr Holding A/SScreening device and drive means for the screening device and method of manual operating the screening device and a mounting for the screening device
US20070012407A1 (en)*2002-03-072007-01-18Marc KarishVenetian Blind Having Dual-Drive Mechanism
US20040163774A1 (en)*2002-03-072004-08-26Ming NienVenetian blind having dual-drive mechanism
US6789597B2 (en)*2002-03-072004-09-14Industrial Technology Research InstituteElectromagnetic clutch-controlled electric blind
US20040194897A1 (en)*2002-03-072004-10-07Industrial Technology Research InstituteFriction transmission mechanism for a motor-driven blind
US7040374B2 (en)2002-03-072006-05-09Industrial Technology Research InstituteElectromagnetic clutch-controlled electric blind
US6655441B2 (en)*2002-03-072003-12-02Industrial Technology Research InstituteFriction transmission mechanism for a motor-driven blind
US6659156B2 (en)*2002-03-072003-12-09Industrial Technology Research InstituteScrew transmission mechanism for a blind
US20050067117A1 (en)*2003-09-262005-03-31Kim Dong IkEmbedded type motorized blind device
US6957681B2 (en)*2003-09-262005-10-25Winspia Co., Ltd.Embedded type motorized blind device
US7832453B2 (en)*2006-08-092010-11-16Ke-Min LinAdjusting structure of a curtain for adjusting the angle of curtain blade
US20080035280A1 (en)*2006-08-092008-02-14Ke-Min LinAdjusting structure of a curtain for adjusting the angle of curtain blade
US20080262637A1 (en)*2007-04-202008-10-23David M. DorroughControl for a motorized blind
US20090199975A1 (en)*2008-02-082009-08-13Wei-Cheng YehElectric roman shade
US8461784B2 (en)*2008-07-222013-06-11Hunter Douglas Inc.Programmable motor for window coverings
AU2009274006B2 (en)*2008-07-222016-04-28Hunter Douglas Inc.Motor arrangement for window coverings
US8723454B2 (en)2008-07-222014-05-13Hunter Douglas Inc.Motor arrangement for window coverings
US8193742B2 (en)*2008-07-222012-06-05Hunter Douglas Inc.Programmable motor for window coverings
US20100018654A1 (en)*2008-07-222010-01-28Gary SkinnerProgrammable motor for window coverings
US8365800B2 (en)*2008-12-222013-02-05Samsung Electronics Co., Ltd.Blind with solar batteries and control method thereof
US20100154999A1 (en)*2008-12-222010-06-24Samsung Electronics Co., Ltd.Blind with solar batteries and control method thereof
US8307878B2 (en)2009-01-142012-11-13Hunter Douglas Inc.Noise dampening motor drive system for retractable covering for architectural openings
US10941615B2 (en)2009-01-142021-03-09Hunter Douglas, Inc.Noise dampening motor drive system for retractable covering for architectural openings
US9926741B2 (en)2009-01-142018-03-27Hunter Douglas Inc.Noise dampening motor drive system for retractable covering for architectural openings
US9410371B2 (en)2009-01-142016-08-09Hunter Douglas Inc.Noise dampening motor drive system for retractable covering for architectural openings
US20100175838A1 (en)*2009-01-142010-07-15Hunter Douglas Inc.Noise dampening motor drive system for retractable covering for architectural openings
US8723466B2 (en)2010-09-172014-05-13Lutron Electronics Co., Inc.Motorized venetian blind system
US9834986B2 (en)2012-02-272017-12-05Hunter Douglas Industries B.V.Architectural covering having a drive mechanism
US9371686B2 (en)*2013-03-052016-06-21Somfy SasActuator for driving a blind with adjustable slats and blind comprising such an actuator
US20160010388A1 (en)*2013-03-052016-01-14Somfy SasActuator for driving a blind with adjustable slats and blind comprising such an actuator
US20160017656A1 (en)*2013-03-152016-01-21Springs Window Fashions, LlcWindow covering motorized lift and control operating system
WO2015005983A1 (en)*2013-07-092015-01-15Qmotion IncorporatedBattery powered venetian and roman shade system and methods of use
US9347261B2 (en)2013-08-022016-05-24Lutron Electronics Co., Inc.Adjustment mechanisms for shades
US9611689B2 (en)2013-08-022017-04-04Lutron Electronics Co., Inc.Motorized sheer shading system
US10570661B2 (en)2013-08-022020-02-25Lutron Technology Company LlcMotorized sheer shading system
US11725454B2 (en)2013-08-022023-08-15Lutron Technology Company LlcMotorized sheer shading system
US20160060955A1 (en)*2014-08-272016-03-03Yin-An HsiehRetractable light-diffusing module and light-diffusing structure thereof
US20180163463A1 (en)*2016-06-092018-06-14Whole Space Industries LtdWindow covering positional adjustment apparatus
US10329836B2 (en)*2016-06-092019-06-25Whole Space Industries LtdWindow covering positional adjustment apparatus
US10676988B2 (en)2017-09-202020-06-09Whole Space Industries Ltd.Window covering control apparatus
US11193327B2 (en)*2018-12-142021-12-07Zhengzhou Mingyang Curtain Accessory Materials Co., Ltd.Spring winder and curtains using the spring winder

Similar Documents

PublicationPublication DateTitle
US3809143A (en)Automatic control for venetian blind
EP0804674B1 (en)An end stop device for an electrically operated window screening arrangement
US3581798A (en)Venetian blind construction
US2572291A (en)Venetian blind
JPH0359288A (en)Motor-driven roll screen
CN115328215A (en) A kind of clothes drying machine and its control method
US1222090A (en)Electrically-operated trolley-door.
JP2001090244A (en)Retractable roof structure
US1889226A (en)Venetian blind
US3511299A (en)Condition responsive closure operating device
US2552841A (en)Venetian blind
US2674307A (en)Electrically operated curtain fire screen
US2593104A (en)Window construction
JP2000073676A (en) Slat angle adjusting device for horizontal blind and slat angle adjusting device for electric blind
US2730171A (en)Venetian blinds
US1378123A (en)Trackage for ceiling type of doors with door-openers
KR100225115B1 (en)Fixture window openble upward or downward
US2587696A (en)Venetian blind
US2040610A (en)Carrier mounting and operating means
US3815656A (en)Treadle-actuated closures
US580990A (en)Ventilated shutter
JPH036798Y2 (en)
JPH0213677Y2 (en)
JP2000017975A (en)Shutter device
JP3691148B2 (en) Headbox elevating blind

[8]ページ先頭

©2009-2025 Movatter.jp